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Dynamic response of an elastic plate on a cross-anisotropic poroelastic half- plane to a load moving on its surface

机译:各向异性多孔弹性半平面上的弹性板对在其表面上移动的载荷的动力响应

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摘要

The dynamic response of a thin, isotropic and linear elastic plate on a half-space soil medium to a load moving on its surface is analytically obtained under plane strain conditions. The soil is assumed to be homogeneous, cross-anisotropic and water fully saturated linear poroelastic. Anisotropy manifests itself in the elastic skeleton, the pore water pressure and the permeability. The full Biot's equations of motion are employed. The load is assumed to be distributed over a finite length and moves with constant speed. The moving load is expanded in a complex Fourier series form involving the horizontal coordinate, time and speed. All the response quantities referring to the plate and the soil are also expanded in Fourier series in the same way. Thus, the governing partial differential equations of motion for the plate and the poroelastic soil (u-p formulation) are reduced to a system of ordinary differential equations with only one independent variable, the vertical coordinate. Use of compatibility and equilibrium at the plate-poroelastic soil interface as well as the boundary conditions of the problem, result in the solution of the above system of equations in analytic form. This solution is validated by comparing Its results against other analytic solutions referring to simpler cases (isotropic elastic with a plate and isotropic poroelastic soil without a plate). Finally, parametric studies are conducted to assess the anisotropy effect on the response of the system to moving loading for various values of porosity, permeability and load speed.
机译:在平面应变条件下,通过解析获得了半空间土壤介质上各向同性的线性弹性薄板对其表面上移动的载荷的动力响应。假定土壤是均质的,横观各向异性的和水完全饱和的线性多孔弹性体。各向异性表现在弹性骨架,孔隙水压力和渗透率中。使用完整的毕奥特运动方程。假定载荷分布在有限的长度上,并以恒定速度运动。移动载荷以涉及水平坐标,时间和速度的复杂傅里叶级数形式扩展。涉及平板和土壤的所有响应量也以相同的方式以傅立叶级数展开。因此,将板和多孔弹性土的支配的部分运动微分方程(u-p公式)简化为只有一个独立变量(垂直坐标)的常微分方程组。利用板-多孔弹性土界面的相容性和平衡以及问题的边界条件,可以解析形式求解上述方程组。通过将其结果与涉及较简单情况(带平板的各向同性弹性和不带平板的各向同性多孔弹性土壤)的其他分析解决方案进行比较,验证了该解决方案的有效性。最后,进行了参数研究,以评估不同孔隙率,渗透率和加载速度对系统对移动载荷响应的各向异性影响。

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